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Optimization Techniques for Reactive Network Monitoring

机译:无功网络监控的优化技术

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摘要

We develop a framework for minimizing the communication overhead of monitoring global system parameters in IP networks and sensor networks. A global system predicate is defined as a conjunction of the local properties of different network elements. A typical example is to identify the time windows when the outbound traffic from each network element exceeds a predefined threshold. Our main idea is to optimize the scheduling of local event reporting across network elements for a given network traffic load and local event frequencies. The system architecture consists of N distributed network elements coordinated by a central monitoring station. Each network element monitors a set of local properties and the central station is responsible for identifying the status of global parameters registered in the system. We design an optimal algorithm, the partition and rank (PAR) scheme, when the local events are independent; whereas, when they are dependent, we show that the problem is NP-complete and develop two efficient heuristics: the PAR for dependent events (PAR-D) and adaptive (Ada) algorithms, which adapt well to changing network conditions, and outperform the current state of the art techniques in terms of communication cost.
机译:我们开发了一个框架,以最小化监视IP网络和传感器网络中的全局系统参数的通信开销。全局系统谓词定义为不同网络元素的本地属性的结合。一个典型的示例是识别来自每个网络元素的出站流量超过预定义阈值的时间窗口。我们的主要思想是针对给定的网络流量负载和本地事件频率,优化跨网络元素的本地事件报告的安排。系统架构由中央监控站协调的N个分布式网络元素组成。每个网元监视一组本地属性,中央站负责识别系统中注册的全局参数的状态。当局部事件独立时,我们设计了一种最优算法,即分区排序(PAR)方案。而当它们相互依赖时,我们表明问题是NP完全的,并开发了两种有效的启发式方法:针对事件的PAR(PAR-D)和自适应(Ada)算法,它们能够很好地适应不断变化的网络条件,并且性能优于通信成本方面的最新技术。

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